If 68.0 grams of n2, are able to completely react with unlimited hydrogen, how many grams of ammonia nh3, will be produced

Answers

Answer 1
N2 +3 H2 ⇌ 2 NH3
no of mol of N2 used
=68/28
=2.429 mol
1 mol of N2 produces 2 mol of NH3
2.429 mol of N2 produces 4.858 mol of NH3
mass of NH3 produced
=4.858×17
=82.586g

Related Questions

If an element contains 8 electrons how many electrons will be placed in the 2nd valence shell? 6 2 8 5 11

Answers

Any element that contains 8 electrons fas 6 in the second shell

Answer:

The correct option is 6

Explanation:

The first shell of an atom can contain a maximum of two electrons and must be completely filled (with the two electrons) before the next electron shell is considered for filling. The second electron shell can contain a maximum of eight electrons.

If an element has 8 electrons, 2 of this electrons will occupy/completely fill the first electron shell, while the second shell will only contain the remaining 6 electrons.

NOTE: A neutral atom of an element with 8 electrons is oxygen.

When ammonium nitrate, NH4NO3(s) is added to water at 25 °C, it dissolves spontaneously and the temperature of the solution decreases. This indicates that the factor causing the substance to dissolve is a change in:
a). Energy
b). Enthalpy
c). Entropy
d). temperature

My guess is Entropy, but I'm wavering on some of the other options too. Could someone help and clarify? Thanks!

Answers

Final answer:

The dissolution of ammonium nitrate in water is driven by an increase in entropy, despite it being an endothermic process. The decrease in temperature indicates energy is absorbed, but the dissolution still occurs spontaneously due to the significant increase in disorder in the system. So the correct option is C.

Explanation:

When ammonium nitrate, NH4NO3(s), is added to water at 25 ℃, it dissolves spontaneously and the temperature of the solution decreases. This process is indicative of an endothermic reaction where energy is absorbed during the dissolution of the solute, causing the temperature of the solution to decrease. However, the factor causing the substance to dissolve is a change in entropy (c). The dissolution process results in an increase in entropy due to the increase in disorder that accompanies the formation of the solution, overriding the fact that it's an endothermic process that requires energy input.

The line spectrum of lithium has a red line at 670.8 nm. Calculate the energy of a photon with this wavelength.

Answers

3x10^8 / (670.8 * 10^-9) =4.47x10^14 Hz 4.47x10^14 Hz multiplied by plank's constant = 2.9634x10^-19

2.96 x10-19 J

Answer: The energy of the photon having the given wavelength is [tex]2.96\times 10^{-19}J[/tex]

Explanation:

We are given:

Wavelength of microwave = [tex]670.8nm=670.8\times 10^{-9}m[/tex]    (Conversion factor:  [tex]1m=10^9nm[/tex]  )

To calculate the energy of one photon, we use Planck's equation, which is:

[tex]E=\frac{hc}{\lambda}[/tex]

where,

h = Planck's constant = [tex]6.625\times 10^{-34}J.s[/tex]

c = speed of light = [tex]3\times 10^8m/s[/tex]

[tex]\lambda[/tex] = wavelength = [tex]670.8\times 10^{-9}m[/tex]

Putting values in above equation, we get:

[tex]E=\frac{6.625\times 10^{-34}J.s\times 3\times 10^8m/s}{670.8\times 10^{-9}m}\\\\E=2.96\times 10^{-19}J[/tex]

Hence, the energy of the photon having the given wavelength is [tex]2.96\times 10^{-19}J[/tex]

How does an enzyme increase the rate of the chemical reaction it catalyzes? how does an enzyme increase the rate of the chemical reaction it catalyzes? an enzyme's active site binds only the reactants, and not the products of a reaction, pushing the equilibrium for the reaction far to the right. an enzyme reduces the free-energy change (δg) of the reaction it catalyzes. an enzyme reduces the free energy of activation (ea) of the reaction it catalyzes?

Answers

The correct option is: AN ENZYME REDUCES THE FREE ENERGY OF ACTIVATION OF THE REACTION IT CATALYSES.
Enzymes speed up the rate of chemical reaction by lowering the activation energy of the reaction. The activation energy of a chemical reaction is the energy barrier that must be overcome before the chemical reaction can occur.
Final answer:

Enzymes speed up chemical reactions by decreasing the energy needed for the reaction to occur and by providing a specific location (the active site) where the reaction can take place more easily.

Explanation:

Enzymes are proteins that act as biological catalysts, meaning they speed up chemical reactions that take place within the cells of organisms. They do this by reducing the energy of activation (Ea) necessary for the reaction to take place. The energy of activation is the minimum amount of energy that reactants must have to undergo a chemical reaction. By reducing the Ea, an enzyme essentially 'lowers the bar' for the reaction to happen, allowing it to proceed faster.

The reactants in the reaction that an enzyme catalyzes, also known as the substrate, bind to a specific part of the enzyme called the active site. The enzyme and substrate fit together in a manner often compared to a 'lock and key'. Once the substrate is bound to the active site, the enzyme can facilitate the reaction, converting substrate to product and then releasing the product.

To summarize, enzymes increase the rate of chemical reactions by reducing the energy of activation and by providing a suitable environment for the reaction to occur at the enzyme's active site.

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Which substance can be decomposed by chemical means?

a.cobalt

b.krypton

c.methane

d.zirconium?

Answers

Methane, answer c, can be decomposed by chemical means because methane is a compound. Methane is made up of one atom of carbon and four atoms of hydrogen. Compounds can be broken down. Cobalt, krypton, and zirconium are all elements, and elements cannot be chemically decomposed.

The substance that can be decomposed by chemical means is [tex]\boxed{{\text{c}}{\text{. methane}}}[/tex].

Further Explanation:

The pure form of matter is called substance whereas the combination of atoms and molecules is known as mixture.

Substance is further divided into two types:

1. Element

It is a type of pure substance and is the simplest form that cannot be broken down by any chemical means. Copper, iron, and cobalt are some of the examples of elements.

2. Compound

It is composed of two or more different elements that are held together by chemical bonds. These can be broken down into their respective constituents. Their properties are quite different from those of their constituent elements. NaCl, [tex]{\text{C}}{{\text{O}}_{\text{2}}}[/tex] and [tex]{{\text{H}}_{\text{2}}}{\text{O}}[/tex] are examples of compounds.

a. Cobalt is an element so it is the simplest form in which it can exist. Therefore it cannot be broken down or decomposed by chemical methods.

b. Krypton is an element so it is the simplest form in which it can exist. Therefore it cannot be broken down or decomposed by chemical methods.

c. Methane is formed from one carbon and four hydrogen atoms so it is a compound. Since compounds can be decomposed chemically, methane is also decomposed by chemical means.

d. Zirconium is an element so it is the simplest form in which it can exist. Therefore it cannot be broken down or decomposed by chemical methods.

Learn more:

1. Which sample is a pure substance? https://brainly.com/question/2227438

2. Which is a characteristic of a mixture? https://brainly.com/question/1917079

Answer details:

Grade: High School

Subject: Chemistry

Chapter: Elements, compounds, and mixtures

Keywords: substance, methane, cobalt, zirconium, krypton, element, compound, chemical means, decomposed, broken down, simplest form.

The compound zinc sulfate is a strong electrolyte. write the reaction when solid zinc sulfate is put into water:

Answers

zinc sulfate solid is ZnSO4(s)

The product is the ionization of the strong electrolyte:

                   H2O
ZnSO4 (s)  --------> Zn(2+)  (aq) + SO4(2-) (aq)

The sates are:

 s = solid
 aq = aqueous

This is each molecule of solid ZnSO4 will produce one cation Zn(2+) and one anion SO4(2-) in aqueous solution.

Final answer:

Solid zinc sulfate dissolves in water by dissociating into zinc ions (Zn²⁺) and sulfate ions (SO₄²⁻), making it a strong electrolyte. This shows the nature of ionic compounds dissociating in solutions.

Explanation:

The question asks about the reaction when solid zinc sulfate is dissolved in water, incorrectly referencing reactions of zinc with hydrochloric acid and copper(II) sulfate. However, for zinc sulfate in water, the correct dissociation reaction is:

ZnSO₄(s) → Zn²⁺(aq) + SO₄²⁻(aq)

This equation shows that solid zinc sulfate dissociates into zinc ions (Zn²⁺) and sulfate ions (SO₄²⁻) when it is put into water, making it a strong electrolyte. It highlights the process by which ionic compounds like zinc sulfate split into their respective ions in a solution, thereby enhancing the solution's ability to conduct electricity.

Which of the following does not represent a molecular compound ?

Answers

B) bal2 is the answer
Final answer:

LiBr does not represent a molecular compound; it is an ionic compound because it is made up of lithium (metal) and bromine (nonmetal).

Explanation:

The student is inquiring about which of the provided options does not represent a molecular compound. Molecular compounds, also known as covalent compounds, are formed when nonmetal atoms share electrons to form discrete molecules with covalent bonds. Examples include water (H₂O) and carbon dioxide (CO₂). On the other hand, ionic compounds like sodium chloride (NaCl) are formed from the electrostatic attraction between cations and anions, which result from the transfer of electrons from metal to nonmetal atoms. Here, the substance that does not represent a molecular compound is LiBr, as it is an ionic compound composed of lithium (a metal) and bromine (a nonmetal). The formulas for molecular compounds generally display the number of each type of atom in a molecule, whereas the formula for an ionic compound represents the relative number of ions rather than discrete molecules.

The number of protons in an atom’s nucleus determines its

atomic mass.
number of neutrons.
identity as an element.
total charge as an ion.

Answers

The answer to this question would be: identity as an element.

The number of protons is called atomic number unique for each element. That means there is only one element that has that number of protons, so it can be called as the identity of the element. Atomic mass is made from adding the total amount of proton with neutrons. The charge is made by subtracting the number of protons with the electrons.

The most common sulfur ion has a charge of __________.

Answers

Elemental sulfur actually has 16 electrons with a neutral charge. 
The most common sulfur ion that is formed is the sulfide ion which has a negative 2 charge.

An atoms gets a negative 2 charge by absorbing 2 electrons, hence fulfilling the octet rule.

Why is the parent rock a unique identifier for metamorphic rocks and not for igneous or sedimentary rocks?

Answers

The parent rock is a unique identifier for metamorphic rocks because these rocks are formed by the changes in the parent rock due to heat and pressure. These rocks are formed from the preexisting rocks that can be sedimentary rocks and igneous rocks. For example, metamorphosis of limestone makes marble which is a metamorphic rock. Identifying the parent rock is problematic because the parent rocks change a lot due to metamorphosis and only few minerals left can help in identification process.
Final answer:

The parent rock or protolith is key in identifying metamorphic rocks because it helps explain the mineral composition and textural changes that occur through the metamorphic process due to heat and pressure. This direct link between metamorphic rocks and their parent rock is not found in igneous or sedimentary rocks, making the parent rock a unique identifier for metamorphic types.

Explanation:

The concept of the parent rock, or protolith, is crucial in understanding metamorphic rocks because it represents the original, unmetamorphosed rock from which a metamorphic rock was formed. Unlike igneous or sedimentary rocks, metamorphic rocks undergo physical and sometimes chemical changes due to heat and pressure without melting, and these changes often result in patterns or orientations in the minerals, such as foliation.

The composition and texture of a metamorphic rock directly relate to its parent rock, providing clues to the conditions under which it formed. This unique relationship between metamorphic rocks and their parent rock allows geologists to determine the past conditions of the Earth's crust and understand the geological history more completely.

Overall, the identification of the parent rock is essential for classifying metamorphic rocks because it helps to understand the metamorphic processes that the rock has undergone and explains its current mineral composition and texture.

What elements on the periodic table are most likely to form molecular compounds?

Answers

Alkaline Earth Metals and Alkali Reactive metals because they need more electrons to acquire octet.

How many moles of S are in 35.4 g of (C3H5)2S?

Answers

0.310 moles First, look up the atomic weights of the elements involved. Atomic weight carbon = 12.0107 Atomic weight hydrogen = 1.00794 Atomic weight sulfur = 32.065 Molar mass (C3H5)2S = 6 * 12.0107 + 10 * 1.00794 + 32.065 = 114.2086 g/mol Moles (C3H5)2S = 35.4 g / 114.2086 g/mol = 0.309959145 mol Since there's just one sulfur atom per (C3H5)2S molecule, the number of moles of sulfur will match the number of moles of (C3H5)2S which is 0.310 when rounded to 3 significant digits.

References t6-3 hess's law for the reaction: agi(s) + br2(g) → agbr(s) + i2(s), δh° = –54.0 kj δhf° for agbr(s) = –100.4 kj/mol δhf° for br2(g) = +30.9 kj/mol the value of δhf° for agi(s) is:

Answers

Final answer:

By applying Hess's law, we can calculate the unknown standard enthalpy of formation for AgI(s) using the given standard enthalpy of reaction, and the standard enthalpies of formation for the other reactants and products.

Explanation:

In order to determine the value of ΔHf° for AgI(s), we need to use Hess's law which states that the total enthalpy change in a chemical reaction is independent of the pathway over which the reaction takes place. The formula is as follows: ΔHrxn = Σ ΔHf°(products) - Σ ΔHf°(reactants).

Given: ΔHrxn = -54.0 kJ, ΔHf° for AgBr(s) = -100.4 kJ/mol, and ΔHf° for Br2(g) = +30.9 kJ/mol. Making AgI(s) the subject of the formula, we find ΔHf° for AgI(s) =  Σ ΔHf°(products) - ΔHrxn, which upon substituting the values gives us the answer.

 

This method which employs Hess's law, enthalpy of formation, and the known quantities to provide the unknown standard enthalpy of formation for AgI(s) is representative of typical approaches in thermochemistry.

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The enthalpy of formation for AgI(s) is calculated using Hess's Law with the known enthalpies of formation for AgBr(s) and Br₂(g). Applying the enthalpy change for the reaction, the ΔH°f for AgI(s) is found to be -15.5 kJ/mol.

To determine the enthalpy of formation (ΔH°f") of AgI(s) for the reaction AgI(s) + Br₂(g) → AgBr(s) + I₂(s) using Hess's Law:

First, use the given enthalpy change of the reaction, which is -54.0 kJ.We know ΔH°f for AgBr(s) is -100.4 kJ/mol and ΔH°f for Br₂(g) is 30.9 kJ/mol. The enthalpy of formation for elements in their standard state (like I₂(s)) is zero.Apply Hess's Law: ΔH° = (ΔH°f of products) - (ΔH°f of reactants). Inserting the known values:-54.0 kJ = (-100.4 kJ/mol) - (ΔH°f of AgI(s) + 30.9 kJ/mol)Rearrange to solve for ΔH°f of AgI(s):ΔH°f of AgI(s) = -100.4 kJ + 30.9 kJ + 54.0 kJΔH°f of AgI(s) = -15.5 kJ/mol

Choose the correct order of electron structures from largest to smallest.

A. principal energy level, sublevel, orbital, electron
B. orbital, sublevel, principal energy level, electron
C. electron, orbital, sublevel, principal energy level
D. principal energy level, sublevel, electron, orbital

Answers

A. principal energy level, sublevel, orbital, electron

Answer:

Principal energy level, sublevel, orbital, electron.  A table relating these classifications is attached.

What physical property difference enabled you to Seperate salt from water?

Answers

The two techniques for separating an insoluble solid from a liquid are filtration and centrifuging. Filtration relies on the fact that the solid particles are smaller than the filter paper pores which allow the tiny molecules of liquid to pass through. With solids which dissolve in a liquid solvent, evaporation is commonly used to recover the solid and distillation is used to recover the solvent.
Warm it up so salt can dissolve

(5.3 x 10^4 ) + (1.3 x 10^4 )

i have to express it into scientific notation and than find the significant figure.

Answers

The answer:  " 6.6 * 10 ⁴ " .
___________________________________________
Explanation:
___________________________________________
(5.3 * 10⁴) + (1.3 * 10⁴) = (5.3 + 1.3) * 10⁴ ;
___________________________________________
Note:  "2a + 3a = (2+3) a = 5a " ; 

In other words, we are combining the "like terms" ;
______________________________________________
(5.3 + 1.3) * 10⁴  =  6.6 * 10⁴ .  

We retain the "2 (two) significant figures" ; because "5.3" and "1.3" both have 2 (two) significant figures.

The answer:  " 6.6 * 10⁴ "  ;  is already written in scientific notation.

(Note:  To write a number in scientific notation; one takes the nearest "non-zero, whole number" that appears to the nearest "left side of the number", writes down that "digit:.  Then, if there are any numbers to the left or right or that number, one writes a "decimal point" after the aforementioned digit.  
 Then, one writes the "multiplication sign" (i.e, the [*] or [ˣ]  symbol) ; then followed by the number; "10",  raised to the appropriate exponent ("power").
If the aforementioned [single, aforementioned, non-zero, integer digit]  has numbers ["digits"] to to the left, then the exponent {"power"] digit written IS that very [number of digits; i.e, number of decimal spaces] to the left [of that aforementioned, single, non-zero, integer digit] ; yet the actual "exponent" {"power"} digit is:  "-4" ;  since we are counting to the LEFT.
_____________________________________
Examples:
_____________________________________
  " 0.0000404 " ;  written in "scientific notation" ; is:

   " 4.04 * 10⁻⁴ " .   {Note:  The "10 ⁻ ⁴ "  ;  the  "FOUR"  (in the "-4") comes from moving back "FOUR (4) decimal places".  
 
Other example:
  " -0.0003 ";  written in scientific notation; is:  " 3 * 10⁻⁴ ".
  
If the digits are to the "right" of the "whole number digit" that was written down; then the appropriate number is a positive number".  NOTE:  FOR THE APPROPRIATE "exponent" or "power";  if one is dealing with a decimal value, and the decimal value ends in a "zero" as given; or, as an obtained measurement; then we include the "zero" when converted that value to scientific notation.
____________________________________
Example:
_____________________________________
  70 ; written in scientific notation; is:  "7 * 10¹ " .
_____________________________________
  70.0 ; written in scientific notation; is: "7.00 * 10¹ "
______________________________________
  - 0.05 ; written in scientfic notation; is:  " -5 * 10⁻² " .
______________________________________
  0.0600 ; written in scientific notation is:  "6.0 * 10⁻² " .
______________________________________
NOTE:  I provide this explanation to show that our answer ;

  6.6 * 10⁴ ;  is already in scientific notation; and that the number of significant figures is correct;  since both values in the original problem have exactly 2 (TWO) significant figures.
_______________________________________

The electron configuration for an atom is 1 s 2 2 s 2 2 p 2 . How many electrons does the atom have?

A. 6
B. 2
C. 5
D. 4

Answers

D. i did this test before :P

Answer:

D) 4

Explanation:

Dissolving a rock in acid is the equivalent of

Answers

weathering and erosion?

Answer:

it is equivalent to the erosion of the rocks.

Explanation:

It can be said that the process of dissolving a rock is equivalent to the erosion process because erosion is the wear and tear on the rocks that is produced by the action of wind and water in their different forms. This wear is produced by the dragging of the particles from the rocks, produced by the impact of the particles that are moved in the medium against the rocks. When dissolving a rock in an acid, for example lemon or acetic acid, these acids react with the stone dissolving it, allowing the stone to break.

What type of reaction does one reactant form two or more products?

Answers

decomposition is the reverse of combination. therefore decomposition reaction is a type of reaction where one reactants produces two or more reactants.

Pairs of valence electrons that are not involved in covalent bonding are known as

Answers

Valence electrons (electrons potentially available for bonding) that are not involved in covalent bonding are called lone pair electrons.

In a three-step calculation, would you round your answer after the first, second, or third step?

Answers

u use the 3rd step, but in the case of food, u would use the first step! Good luck!

What mass, in g, of agcl is formed from the reaction of 75.0 ml of a 0.078 m agc2h3o2 solution with 55.0 ml of 0.109 m mgcl2 solution? 2 agc2h3o2(aq) + mgcl2(aq) â 2 agcl(s) + mg(c2h3o2)2(aq)?

Answers

Answer:

The mass we will get from AgCl is 0.839g

Explanation:

Hello!

Let's solve this!

The reaction is:

2AgC2H3O2 + MgCl2 ---> 2AgCl + Mg (C2H3O2) 2

The data we have are:

V1 = 75mL * (1L / 1000L) = 0.075L

M1 = 0.078M

V2 = 55mL * (1L / 1000mL) = 0.055L

M2 = 0.109M

The molarity formula is

M = mol / V

We calculate the moles of each compound:

molAgC2H3O2 = 0.075L * 0.078mol / L = 0.00585mol

molMgCl = 0.055L * 0.109M = 0.005995

We calculate the compound that is in excess, and then use the limiting reagent to calculate the amount of product we will obtain.

Since there are two Cl in MgCl2, this means that we have 0.01199 mol to produce the product, but we will only use 0.00585 mol which is the amount we have of AgC2H3O2. So MgCl is the excess reagent.

Then:

AgCl mass = 0.00585mol * (2mol AgCl / 2molAgC2H3O2) * (143.34g AgCl / 1mo AgCl) = 0.839gAgCl

The mass we will get from AgCl is 0.839g

0.839 g of AgCl is formed.

Further explanation

Given a reaction between:

75.0 ml of a 0.078 M AgC₂H₃O₂ solution 55.0 ml of 0.109 M MgCl₂ solution

Question:

What mass, in g, of AgCl is formed?

The Process:

Step-1:

Let us find the mole numbers of both reagents:

[tex]\boxed{ \ Concentration \ (M) = \frac{moles \ (n)}{volume \ (V)} \ } \rightarrow \boxed{ \ n = MV \ }[/tex]

AgC₂H₃O₂ → 0.078 x 0.075 = 5.85 mmol

MgCl₂ → 0.109 x 0.055 = 5.995 mmol

Step-2:

The equation for the reaction is

[tex]\boxed{ \ 2 AgC_2H_3O_2_{(aq)} + MgCl_2_{(aq)} \rightarrow 2 AgCl_{(s)} + Mg(C_2H_3O_2)_2_{(aq)} \ }[/tex]

According to the equation, 2 mol of AgC₂H₃O₂ react with 1 mol of AgCl.

Let us check which substances will be a limiting reagent.

AgC₂H₃O₂ → [tex]\boxed{ \ \frac{5.85}{2} = 2.925 \ }[/tex]

MgCl₂ → [tex]\boxed{ \ \frac{5.995}{1} = 5.995 \ }[/tex]

AgC₂H₃O₂ is the limiting reagent because the test results are the smallest.

Step-3:

As AgC₂H₃O₂ is the limiting reagent, the amount of AgCl produced will be determined by the amount of AgC₂H₃O₂. Since the proportion between the mole numbers of AgC₂H₃O₂ and AgCl is one to one, their mole numbers will be equal:

[tex]\boxed{ \ The \ mole \ of AgCl = \frac{1}{1} \times the \ mole \ of \ AgC_2H_3O_2 \ }[/tex]

So the amount of AgCl is 5.85 moles.

Step-4:

Prepare the molar mass of AgCl.

Mr = 108 + 35.5 = 143.5 g/mol

Let us find out how many mass, in g, of AgCl is formed.

[tex]\boxed{ \ mol \ (n) = \frac{mass \ (g)}{molar \ mass \ (Mr)} \ } \rightarrow \boxed{ \ g = n \times Mr \ }[/tex]

Mass = 5.85 mmol x 143.5 g/mol

Mass = 839.475 mg ≈ 0.839 g.

Thus the amount of AgCl is formed is 0.839 g.

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Which group of drugs includes legal painkillers like OxyContin?

A.Stimulants

B.Hallucinogens

C.Depressants

D.Narcotics

Answers

Answer:

Narcotics

Explanation:

gradpoint

Coal is plentiful and inexpensive; therefore many countries use it despite its environmental impacts. True or False

Answers

True because it is something that will last for a while
That statement is true
Despite its cheap price, The usage of coal as an energy source will release sulfur dioxide, nitrogen oxides, to the air around our environment.
This substance will give negative effects such as acidic rain that could be corrosive to our body and polluted air that is bad for our respiratory system.

The Earth's mantle is

Answers

According to National Geographic Society;
The mantle lies between Earth's dense, super-heated core and its thin outer layer, the crust. The mantle is about 2,900 kilometers (1,802 miles) thick, and makes up a whopping 84% of Earth's total volume. ... Other mantle elements include iron, aluminum, calcium, sodium, and potassium.
The earths mantle is a silicate rocky shell with an average thickness of 2,886 kilometers.1,793 mi

In a popular song from 1970, the musical group Crosby, Stills, and Nash use the line, "We are stardust." Why is this statement true?

Answers

Answer:

C

Explanation:

C) All elements, including those in our body, that are heavier than hydrogen are produced by fusion at the center of stars. Explosions of these stars then lead to the creation of planets and organisms.

Fission occurs at the star's core to create all elements heavier than hydrogen, including those found in human body. The subsequent explosions of these stars and it dust result in the formation of planets and life.

What are stars?

Stars are massive objects in the universe with shining light and are grouped to any galaxy by the force of gravitation. Sun is a star who provide energy for us.

There are many more elements in each star which are formed through fusion such as hydrogen and helium in sun. Stars are thus the source of nuclear fusion.

Each stars have a definite life time and after that it will die by explosion and this result in a huge dust particles which are then contributing to the formation of other planets and gaseous atmosphere.

By fission takes place in the starts other elements are generated to form a stable atmosphere and that's why the musical group says that everything including them are from stardust and the statement is true.

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An element of Group II loses two electrons in the process of a chemical combination. What is its ionic charge?

Answers

The answer is +2

Hope this helps!

Explanation:

An element that gains one electron will tend to acquire a negative charge whereas an element that tend to lose an electron will acquire a positive charge.

Similarly, an element losing two electrons will acquire a 2+ charge.

For example, calcium is a group II element and has 2 valence electrons. Therefore, to attain stability it loses two electrons and thus changes into [tex]Ca^{2+}[/tex] ion.

Hence, we can conclude that an element of Group II loses two electrons in the process of a chemical combination then its ionic charge will be +2.

What element is represented by the electron configuration [ar]4s23d8?

Answers

Answer:

Nickel

Explanation:

The element which have the electronic configuration of [Ar]4s²3d⁸ is Nickel

What is electronic configuration?

This is the arrangement of electrons in the various energy levels of an atom.

The number of electrons to be filled in the energy levels is equal to the atomic number of the element

How to determine the elementElectronic configuration = [Ar]4s²3d⁸Atomic number of Ar = 18Element =?

Atomic number of element = Ar + 2 + 8

Atomic number of element = 18 + 2 + 8

Atomic number of element = 28

From the periodic table, only Nickel has atomic number of 28.

Thus, we can conclude that the element having the electronic configuration of [Ar]4s²3d⁸ is Nickel

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A student-made sample of sodium carbonate weighing 0.169g that generates 37.6 mL of CO2 gas when treated with sulfuric acid. The atmospheric pressure in the lab is 731.8 mm Hg and the temp. is 21.3-degree Celsius.

A. What is the partial pressure of CO2 gas generated from the sample in mm Hg? In atm?
B. How many moles of CO2 gas are produced?
C. How many moles of pure Na2CO3 were there in the sample?
D. How much was pure Na2CO3 there in the sample, in grams?
E. What was the percent of pure Na2CO3 in the sample?

Answers

First let us consider the CO₂ formed in the reaction where the variables are:

>Pressure, P = (731.8/760) atm

>Volume, V = 37.6 mL = 0.0376 L

>Gas constant, R = 0.0821 atm L / (mol K)

>Temperature, T = (273.2 + 21.3) K = 294.5 K

 

From the ideal gas law : PV = nRT

Then, n = PV/(RT)

 

number of moles CO₂ formed, n = (731.8/760) × 0.0376 / (0.0821 × 294.5) mol = 0.001497 mol

 

The complete balanced chemical equation for the reaction is:

Na₂CO₃ + H₂SO₄ → Na₂SO₄ + H₂O + CO₂

We see that the mole ratio is Na₂CO₃ : CO₂ = 1 : 1

 

Hence, the number of moles of Na₂CO₃ which reacted

 => n = 0.001497 mol

 

Calculating for molar mass of Na₂CO₃

 => (23.0×2 + 12.0 + 16.0×2) g/mol = 106.0 g/mol

 

Therefore, mass of Na₂CO₃ reacted

=> (0.001497 mol) × (106.0 g/mol) = 0.159 g

 

So the percent purity of Na₂CO₃ in the sample is

=> (0.159/0.169) × 100% = 94.1%

 

Summary of answers:

a. 731.8 mm Hg; 0.963 atm

b. 0.001497 mol

c. 0.001497 mol

d. 0.159 g

e. 94.1%

Final answer:

The CO₂ gas's partial pressure is found using atmospheric pressure, with conversion to atm. Moles of CO₂ and Na₂CO₃ are calculated using the ideal gas law and stoichiometry. The percent purity of Na₂CO₃ is determined by comparing pure Na₂CO₃ mass to the original sample mass.

Explanation:Gas Produced from Sodium Carbonate Reaction

To determine the partial pressure of CO₂ gas produced, we use the ideal gas law, corrected for non-standard conditions and vapor pressure of water (which is negligible here). Given the atmospheric pressure, we take that as the total pressure, assuming CO₂ is the only gas collected. The conversion to atm from mm Hg is done using the conversion factor: 1 atm = 760 mm Hg.

To find the number of moles of CO₂, we will use the ideal gas equation (PV=nRT) with the provided volume, temperature, and pressure. For the temperature, we'll convert from Celsius to Kelvin by adding 273.15.

To determine the moles of Na₂CO₃, we use the stoichiometry of the reaction between sodium carbonate and sulfuric acid, knowing that it produces sodium sulfate, water, and CO₂. The molar mass of Na₂CO₃ is needed to find the mass of the pure sodium carbonate in the sample.

Finally, the percent purity of Na₂CO₃ in the original sample is calculated using the mass of pure Na₂CO₃ obtained and the original mass of the sample.

Learn more about Gas Stoichiometry here:

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Butane is used as a fuel in camping gas stoves.100 cm3 of butane is burned in excess oxygen .calculate the volume of carbon dioxide produced at r.t.p

Answers

The given for the problem:

100 cm^3 butane

Get first the molecular formula of butane and it is C4H10

 

To solution for the problem is:

2 C4H10 + 13 O2 = 8 CO2 + 10 H2O
n = V/22.4


n (C4H10) = 0.1/22.4 = 0.0047 mol


n (CO2) = 4 · n (C4H10) = 4 · 0.0047 = 0.018 mol

Burning 100 cm³ of butane in excess oxygen at STP produces 0.4 liters of carbon dioxide, as calculated through the stoichiometry of the balanced combustion reaction of butane.

When butane (C₄H₁₀) is burned in excess oxygen, the combustion reaction can be represented by the balanced equation:

2 C₄H₁₀(g) + 13 O₂(g) → 8 CO₂(g) + 10 H₂O(g)

The balanced equation shows that 2 moles of butane produce 8 moles of carbon dioxide (CO₂). At standard temperature and pressure (STP), 1 mole of any gas occupies 22.4 L. Therefore, for every 2 moles (2 × 22.4 L) of butane, 8 moles (8 × 22.4 L) of CO₂ are produced. If we burn 100 cm³ (which is equivalent to 0.1 L) of butane, we need to determine how many moles this quantity represents and then calculate the corresponding volume of CO₂ produced.

First, we calculate the moles of butane:

0.1 L butane × (1 mole butane / 22.4 L) = 0.00446 moles butane

Using the stoichiometry of the reaction, the moles of CO₂ produced are 4 times the moles of butane:

0.00446 moles butane × (4 moles CO₂ / 1 mole butane) = 0.01784 moles CO₂

Now, we convert the moles of CO₂ to volume at STP:

0.01784 moles CO₂ × (22.4 L / 1 mole CO₂) = 0.4 L CO₂

Therefore, 100 cm³ of butane will produce 0.4 liters of carbon dioxide at STP when burned in excess oxygen.

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